首页> 外文会议>European Signal Processing Conference >GEOMETRICALLY-BASED SPACE-TIME DETERMINISTIC MUTIPATH FADING CHANNEL MODEL WITH APPLICATION TO SPATIAL CORRELATION VERIFICATION OF MULTI-ANTENNA SYSTEMS
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GEOMETRICALLY-BASED SPACE-TIME DETERMINISTIC MUTIPATH FADING CHANNEL MODEL WITH APPLICATION TO SPATIAL CORRELATION VERIFICATION OF MULTI-ANTENNA SYSTEMS

机译:基于几何的时空确定性Mutipath衰落通道模型,应用于多天线系统的空间相关验证

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This paper presents a deterministic space-time multipath Rayleigh fading channel model to study space-time correlation of the received signal waveforms to multi-antenna array receiver system. It can be considered as a modification of Lee's model, which is based on vector sum of fading waveforms, incorporating azimuth spread, time delay along the array, scatterers' location geometry and number of scatterers' considerations. Recent field measurements show a Laplacian distribution of power azimuth, suggesting that there are more scatterers or more scatterers' energy closer to the true direction of the mobile transmitter. Therefore number and location of scatterers at the vicinity of the mobile as well as power of contributed signal components should be revisited in spatio-temporally correlated fading models, which is our motivation. Simulation results show fair agreement with recent field measurements in terms of spatial correlation.
机译:本文介绍了确定性的时空多径瑞利渐次思想模型,用于研究接收信号波形到多天线阵列接收机系统的时空相关性。它可以被认为是LEE模型的修改,该模型基于渐变波形的矢量和,包括沿着阵列的方位角,散射者的位置几何和散射者的考虑因素的时间延迟。最近的场测量显示了动力方位角的Laplacian分布,表明还有更多的散射体或更多散射体的能量更接近移动变送器的真实方向。因此,在移动的移动信号附近的散射体的数量和位置应在时空相关的衰落模型中重新审视,这是我们的动机。仿真结果表明,在空间相关方面,与最近的现场测量结果表明。

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